Tanford C, Reynolds J A, Johnson E A
Department of Physiology, Duke University Medical Center, Durham, NC 27710.
Proc Natl Acad Sci U S A. 1987 Oct;84(20):7094-8. doi: 10.1073/pnas.84.20.7094.
The conventional alternating access model for Ca2+ transport by the sarcoplasmic reticulum Ca2+ pump is modified, partly on the basis of the proposed MacLennan-Green domain structure for the Ca2+-pump protein. The present model divides the uptake state (E1) of the protein into three substates, differing in the condition of the Ca2+-binding domain. The domain is an open cavity in the first substate and can bind only a single Ca2+ ion. A fast "jaw-closing" (or "hinge-bending") step then partially closes the cavity to generate the second substate that has a second Ca2+-binding site. Occupation of this site is followed by another jaw-closing step that closes the binding cavity and occludes the bound ions. The subsequent translocation step (to form E2) remains unchanged from previous models. The modified model predicts a constant transport stoichiometry of two Ca2+ per pump reaction cycle. It suggests a plausible mechanism for coupling between Ca2+ binding and ATP utilization: the model predicts (in agreement with experiment) that Ca2+ binding should be a mandatory requirement for phosphorylation of the pump protein, though ATP binding per se does not require Ca2+. The model is consistent with high cooperativity in equilibrium binding of Ca2+, both in the absence and presence of ATP.
肌浆网钙泵对钙离子转运的传统交替访问模型得到了修正,部分是基于所提出的钙泵蛋白的麦克伦南 - 格林结构域结构。当前模型将蛋白质的摄取状态(E1)分为三个亚状态,它们在钙离子结合结构域的状态上有所不同。在第一个亚状态下,该结构域是一个开放的腔,只能结合单个钙离子。然后一个快速的“颚部闭合”(或“铰链弯曲”)步骤部分关闭腔,产生具有第二个钙离子结合位点的第二个亚状态。占据这个位点之后是另一个颚部闭合步骤,该步骤关闭结合腔并封闭结合的离子。随后的转运步骤(形成E2)与先前模型保持不变。修正后的模型预测每个泵反应循环的钙离子转运化学计量为两个钙离子。它提出了一种钙离子结合与ATP利用之间偶联的合理机制:该模型预测(与实验一致)钙离子结合应该是泵蛋白磷酸化的必要条件,尽管ATP本身的结合并不需要钙离子。该模型与在有无ATP情况下钙离子平衡结合的高协同性一致。